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Registro Completo |
Biblioteca(s): |
Embrapa Mandioca e Fruticultura. |
Data corrente: |
24/08/1995 |
Data da última atualização: |
24/08/1995 |
Autoria: |
FERNANDEZ, F. G.; CARO, M.; CERDA, A.; GUILLEN, M. G. |
Afiliação: |
departamento de Fertilidad de Suelos y Nutricion Vegetal, Centro de Edafologia y biologia Aplicada del Segura, murcia, Espana, Spain. |
Título: |
Distribucion de cloruro y sodio en patrones citricos regados con aquas de caracter salino (chlorida and sodium distribution in citrus rootstocks irrigated with saline waters). |
Ano de publicação: |
1977 |
Fonte/Imprenta: |
Reprinted from Proc. Int. Soc. Citriculture, v.3, p.1014, 1977 |
Idioma: |
Inglês |
Conteúdo: |
the effects of increasing levels of sodium chloride (NaCL) in the irrigation water on the cloride (Cl) and sodium (Na) distribuition betwee the different parts of 6 citrus rootstock varieties were studied. The experiment was carried out in a glasshouse for months, as a factorial design with 2 replicates, and using the concentrations 1.5 - 10 - 20 - 40 meq NaCl/liter in the irrigation water. Results at the end of the experiment show: In the 3 considered parts of the plants:root, stem and leaf, the chloride content increased highly with increasing salinityof the substrate. The mean chloride content in the stem was generally lower, with very high significante, than those in roots and leaves, the latter having largest accumulation. |
Palavras-Chave: |
Ion accumulation; Salt; Translocation. |
Categoria do assunto: |
-- |
Marc: |
LEADER 01367naa a2200193 a 4500 001 1646845 005 1995-08-24 008 1977 bl --- 0-- u #d 100 1 $aFERNANDEZ, F. G. 245 $aDistribucion de cloruro y sodio en patrones citricos regados con aquas de caracter salino (chlorida and sodium distribution in citrus rootstocks irrigated with saline waters). 260 $c1977 520 $athe effects of increasing levels of sodium chloride (NaCL) in the irrigation water on the cloride (Cl) and sodium (Na) distribuition betwee the different parts of 6 citrus rootstock varieties were studied. The experiment was carried out in a glasshouse for months, as a factorial design with 2 replicates, and using the concentrations 1.5 - 10 - 20 - 40 meq NaCl/liter in the irrigation water. Results at the end of the experiment show: In the 3 considered parts of the plants:root, stem and leaf, the chloride content increased highly with increasing salinityof the substrate. The mean chloride content in the stem was generally lower, with very high significante, than those in roots and leaves, the latter having largest accumulation. 653 $aIon accumulation 653 $aSalt 653 $aTranslocation 700 1 $aCARO, M. 700 1 $aCERDA, A. 700 1 $aGUILLEN, M. G. 773 $tReprinted from Proc. Int. Soc. Citriculture$gv.3, p.1014, 1977
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Registro original: |
Embrapa Mandioca e Fruticultura (CNPMF) |
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1. | | RAHMATI, M.; WEIHERMÜLLER, L.; VANDERBORGHT, J.; PACHEPSKY, Y. A.; MAO, L.; SADEGHI, S. H.; MOOSAVI, N.; KHEIRFAM, H.; MONTZKA, C.; VAN LOOY, K.; TOTH, B.; HAZBAVI, Z.; AL YAMANI, W.; ALBALASMEH, A. A.; ALGHZAWI, M. Z.; ANGULO-JARAMILLO, R.; ANTONINO, A. C. D.; ARAMPATZIS, G.; ARMINDO, R. A.; ASADI, H.; BAMUTAZE, Y.; BATLLE-AGUILAR, J.; BÉCHET, B.; BECKER, F.; BLÖSCHL, G.; BOHNE, K.; BRAUD, I.; CASTELLANO, C.; CERDÀ, A.; CHALHOUB, M.; CICHOTA, R.; CÍSLEROVÁ, M.; CLOTHIER, B.; COQUET, Y.; CORNELIS, W.; CORRADINI, C.; COUTINHO, A. P.; OLIVEIRA, M. B. de; MACEDO, J. R. de; DURÃES, M. F.; EMAMI, H.; ESKANDARI, I.; FARAJNIA, A.; FLAMMINI, A.; FODOR, N.; GHARAIBEH, M.; GHAVIMIPANAH, M. H.; GHEZZEHEI, T. A.; GIERTZ, S.; HATZIGIANNAKIS, E. G.; HORN, R.; JIMÉNEZ, J. J.; JACQUES, D.; KEESSTRA, S. D.; KELISHADI, H.; KIANI-HARCHEGANI, M.; KOUSELOU, M.; KUMAR JHA, M.; LASSABATERE, L.; LI, X.; LIEBIG, M. A.; LICHNER, L.; LÓPEZ, M. V.; MACHIWAL, D.; MALLANTS, D.; MALLMANN, M. S.; MARQUES, J. D. de O.; MARSHALL, M. R.; MERTENS, J.; MEUNIER, F.; MOHAMMADI, M. H.; MOHANTY, B. P.; PULIDO-MONCADA, M.; MONTENEGRO, S.; MORBIDELLI, R.; MORET-FERNÁNDEZ, D.; MOOSAVI, A. A.; MOSADDEGHI, M. R.; MOUSAVI, S. B.; MOZAFFARI, H.; NABIOLLAHI, K.; NEYSHABOURI, M. R.; OTTONI, M. V.; OTTONI FILHO, T. B.; PAHLAVAN-RAD, M. R.; PANAGOPOULOS, A.; PETH, S.; PEYNEAU, P.-E.; PICCIAFUOCO, T.; POESEN, J.; PULIDO, M.; REINERT, D. J.; REINSCH, S.; REZAEI, M.; ROBERTS, F. P.; ROBINSON, D.; RODRIGO-COMINO, J.; ROTUNNO FILHO, O. C.; SAITO, T.; SUGANUMA, H.; SALTALIPPI, C.; SÁNDOR, R.; SCHÜTT, B.; SEEGER, M.; SEPEHRNIA, N.; SHARIFI MOGHADDAM, E.; SHUKLA, M.; SHUTARO, S.; SORANDO, R.; STANLEY, A. A.; STRAUSS, P.; SU, Z.; TAGHIZADEH-MEHRJARDI, R.; TAGUAS, E.; TEIXEIRA, W. G.; VAEZI, A. R.; VAFAKHAH, M.; VOGEL, T.; VOGELER, I.; VOTRUBOVA, J.; WERNER, S.; WINARSKI, T.; YILMAZ, D.; YOUNG, M. H.; ZACHARIAS, S.; ZENG, Y.; ZHAO, Y.; ZHAO, H.; VEREECKEN, H. Development and analysis of the Soil Water Infiltration Global database. Earth System Science Data, v. 10, n. 3, p. 1237-1263, 2018.Biblioteca(s): Embrapa Solos. |
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