Rascio A, Russo M, Mazzucco L, Platani C, Nicastro G, Di Fonzo N
Istituto Sperimentale per la Cerealicoltura S.S., 16 Km 675, 71100, Foggia, Italy
Plant Sci. 2001 Feb 5;160(3):441-448. doi: 10.1016/s0168-9452(00)00404-0.
A mutant of durum wheat was identified by screening a M4 population (sodium azide) for genotypes with enhanced capacity for potassium accumulation in leaves. The mutant (designated 422) was grown in field, controlled environment, hydroponic culture and NaCl salinized soil. Mutant 422 accumulates about 5 mg/g dry weight more K than the wild-type and is less salt sensitive, based on leaf growth and germination. During vegetative growth exists a specific tolerance of the 422 mutant to K(+) ion and a moderate tolerance to Cl(-) ion, in hydroponic culture. Under severe stress imposed by salts and mannitol, the mutant germinates better than wild type (WT). In soil containing increasing NaCl, mutant 422 had higher potassium amount than WT, but did not show augmented capacity to concentrate the ion in the leaves as salt stress increased. The capability to accumulate potassium could improve tissue hydration, because water content of 422 leaves was greater than WT and increased linearly in relation to leaf K(+) concentration.
通过筛选M4群体(叠氮化钠诱变)以寻找叶片中钾积累能力增强的基因型,鉴定出了一个硬粒小麦突变体。该突变体(命名为422)在田间、可控环境、水培和NaCl盐渍化土壤中生长。基于叶片生长和发芽情况,突变体422比野生型积累的钾多约5毫克/克干重,且对盐更不敏感。在水培中,营养生长期间422突变体对K(+)离子具有特定耐受性,对Cl(-)离子具有中等耐受性。在盐和甘露醇施加的严重胁迫下,该突变体比野生型发芽更好。在含NaCl量增加的土壤中,突变体422的钾含量高于野生型,但随着盐胁迫增加,其在叶片中浓缩离子的能力并未增强。积累钾的能力可改善组织水合作用,因为422叶片的含水量高于野生型,且与叶片K(+)浓度呈线性增加。